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Mesoscopic structure PFC~2D model of soil rock mixture based on digital image

机译:基于数字图像的土石混合体细观结构PFC〜2D模型

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Soil-rock mixture (S/RM) is a very complex discontinuous medium material, which is a multiphase system consisting of high strength rock blocks (Rocks), relatively soft filling components (Soils) and corresponding pores. Because the mechanical properties of various components of soil-rock mixtures under external loads are very different, and there are extremely complex interactions between them. Therefore, the mechanical properties of this geotechnical material (such as stress transfer, failure mode, crack propagation, bearing capacity, etc.) are quite different from those of homogeneous geotechnical materials, and largely depend on the internal structure characteristics of soil-rock mixtures (such as particle size composition, particle shape, particle distribution and arrangement). Due to the complexity of the model, the simulation of its meso-mechanical properties is mostly confined to the random simulation of regular blocks. In this paper, an automatic generation method of PFC similar to 2D numerical model of soil-rock mixture microstructure based on digital image processing is proposed, and the experimental simulation is carried out with matlab. Thus, the rapid, real and automatic modeling of heterogeneous material microstructure by PFC similar to 2D software is realized. The PFC similar to 2D numerical calculation model of soil-rock mixtures is established. The results show that when the stone content is 80%, the analysis should be caused by the large amount of rock, which leads to the large internal voids, and the sudden unloading between the rock and the rock during compaction and then the structural reorganization. (C) 2018 Elsevier Inc. All rights reserved.
机译:土石混合料(S / RM)是一种非常复杂的不连续介质,是一种多相系统,由高强度岩块(Rocks),相对较软的填充组分(Soils)和相应的孔隙组成。因为土石混合物的各种组分在外部载荷下的力学性能差异很大,并且它们之间存在极其复杂的相互作用。因此,这种岩土材料的机械性能(例如应力传递,破坏模式,裂纹扩展,承载力等)与均质岩土材料的力学性能完全不同,并且很大程度上取决于土石混合物的内部结构特征(例如粒度组成,粒度,粒度分布和排列)。由于模型的复杂性,其细观力学特性的仿真主要限于规则块的随机仿真。本文提出了一种基于数字图像处理的类似于土石混合微结构二维数值模型的PFC自动生成方法,并在matlab上进行了实验仿真。因此,可以实现类似于2D软件的PFC对异质材料微观结构的快速,真实和自动建模。建立了类似于土石混合体二维数值计算模型的PFC。结果表明,当岩石含量为80%时,应由大量的岩石引起分析,从而导致内部空隙大,并且在压实过程中岩石与岩石之间突然卸载,然后进行结构重组。 (C)2018 Elsevier Inc.保留所有权利。

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